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Ti_3AlC_2含量对热压制备Cu/Ti_3AlC_2复合材料的影响 被引量:6
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作者 黄振莺 翟洪祥 +1 位作者 李萌启 刘秀 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2011年第S1期529-532,共4页
以Ti3AlC2和Cu粉作为原料,原位热压制备一系列Cu/Ti3AlC2复合材料,并研究Ti3AlC2含量对复合材料生成相、显微组织、力学和电学性能的影响。实验结果表明,在1150℃的高温下,不管Ti3AlC2的含量,Al都从Ti3AlC2中溶出进入液相Cu中,反应生成... 以Ti3AlC2和Cu粉作为原料,原位热压制备一系列Cu/Ti3AlC2复合材料,并研究Ti3AlC2含量对复合材料生成相、显微组织、力学和电学性能的影响。实验结果表明,在1150℃的高温下,不管Ti3AlC2的含量,Al都从Ti3AlC2中溶出进入液相Cu中,反应生成新的复合相。当Ti3AlC2原料的体积分数为40%~60%时,复合材料由Ti3C2相和Cu(Al)合金相组成。Cu/Ti3AlC2复合材料具有高强度及良好的断裂韧性和导电性,归因于Ti3C2聚集薄层与Cu(Al)合金层之间的牢固结合以及Cu(Al)相构成的空间网络结构。当Ti3AlC2原料的体积分数为70%或80%时,复合材料由Ti3C2和Cu9Al4金属间化合物组成,随着Ti3AlC2含量的增加,其强度和断裂韧性减小,硬度和电阻率增大。 展开更多
关键词 cu/ti3alc2复合材料 生成相 显微组织 性能
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Cu包覆Ti_2AlC复合粉体及其增强铝基复合材料的制备 被引量:2
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作者 刘秀 翟洪祥 +1 位作者 贺智勇 张启富 《材料热处理学报》 EI CAS CSCD 北大核心 2017年第4期44-48,共5页
采用机械合金化的方法,以Cu和Ti_2AlC粉作为原料,制备了Cu包覆Ti_2AlC复合颗粒。研究了Cu、Ti_2AlC体积比和球磨时间对包覆效果的影响,并将包覆颗粒与Al粉混合后采取干压成型、无压气氛保护烧结的方法制备了Cu包覆Ti_2AlC增强铝基复合... 采用机械合金化的方法,以Cu和Ti_2AlC粉作为原料,制备了Cu包覆Ti_2AlC复合颗粒。研究了Cu、Ti_2AlC体积比和球磨时间对包覆效果的影响,并将包覆颗粒与Al粉混合后采取干压成型、无压气氛保护烧结的方法制备了Cu包覆Ti_2AlC增强铝基复合材料。实验结果表明,Cu体积含量为30%,球磨时间为10 h时,能制备出包覆效果良好的复合颗粒;球磨的高能量使Cu和Ti_2AlC在垂直于Ti_2AlC c轴方向发生机械合金化,从而使得Cu的包覆较为牢固;Cu包覆Ti_2AlC增强铝基复合材料的烧结产物主要为Ti_3AlC2、Al、Al_2Cu、Al_3Ti和Al_2O_3,其复合材料较为致密,增强颗粒分布较为弥散。 展开更多
关键词 cu ti2alc 机械合金化 包覆 铝基复合材料
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Cu/Ti_3AlC_2复合材料的耐磨性研究 被引量:4
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作者 王蕾 金松哲 孙世成 《长春工业大学学报》 CAS 2008年第4期437-441,共5页
以元素单质粉Ti,Al,C,Cu为原料,采用机械合金化和放电等离子烧结(SPS),成功制备了Cu/Ti3AlC2复合材料块体,并对其进行了组织性能分析。实验结果表明:采用SPS烧结技术制备的Cu/Ti3AlC2复合材料,随着Ti3AlC2含量的增加,其显微硬度逐渐提高... 以元素单质粉Ti,Al,C,Cu为原料,采用机械合金化和放电等离子烧结(SPS),成功制备了Cu/Ti3AlC2复合材料块体,并对其进行了组织性能分析。实验结果表明:采用SPS烧结技术制备的Cu/Ti3AlC2复合材料,随着Ti3AlC2含量的增加,其显微硬度逐渐提高,相同烧结工艺条件下(900℃烧结,保温20 min)添加15vol%Ti3AlC2复合材料的硬度比纯Cu提高近2倍;添加适量的Ti3AlC2可显著提高复合材料的耐磨性,当复合材料中含5vol%Ti3AlC2时,磨损量降低30%以上。 展开更多
关键词 cu/ti3alc2 复合材料 机械合金化 放电等离子烧结 耐磨性
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Microstructures and Mechanical,Electrical,High-temperature Properties of Cu/Ti_2AlC FGM Fabricated by Hot-pressing
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作者 陈艳林 LI Jin +2 位作者 LIU Hao LI Zongyu ZENG Chengwen 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第6期1250-1254,共5页
The microstructure and the electrical, thermal, friction, and mechanical properties of Cu/Ti_2AlC fabricated by hot-pressing at 900 ℃ for 1 h were investigated in the present work. Microstructural observations have s... The microstructure and the electrical, thermal, friction, and mechanical properties of Cu/Ti_2AlC fabricated by hot-pressing at 900 ℃ for 1 h were investigated in the present work. Microstructural observations have shown that the plate-like Ti_2AlC grains distribute irregularly in the network of Cu grains, and well-structured, crack-free bonds between the layers. With the increase in the content of Ti_2AlC from layer A to layer D, the electrical resistivity increases from 1.381×10^(-7)Ω·m to 1.918 ×10^(-7)Ω·m, the hardness increases from about 980.27 MPa to about 2196.01 MPa, and the friction coefficient from above 0.20 reduces to about 0.15. Oxidation rate increases with the increases of temperature. Exfoliation was obviously observed on the surface of oxidation layer A. The surface of layer D was still intact and the spalling and other defects were not found. The mass decreases in the acid solution, and increases in the alkaline solution. The largest corrosion rate is found in 6.5% HNO_3 or 4% Na OH solution. 展开更多
关键词 functional gradient material cu/ti2alc preparation performance
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放电等离子烧结Cu/Ti3AlC2的电性能及力学性能 被引量:1
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作者 王青松 代历 +5 位作者 赵娜 李湘君 代帅 胡博文 彭航 陈艳林 《佛山陶瓷》 2020年第1期23-26,共4页
以Ti3AlC2和Cu粉作为原料,使用放电等离子烧结制备Cu/Ti3AlC2复合材料,研究了不同烧结温度对复合材料的影响。结果表明,在750~800℃之间,Cu与Ti3AlC2之间会发生反应生成TiC相。同时随着温度在650~850℃不断增加,密度和抗弯强度不断增加... 以Ti3AlC2和Cu粉作为原料,使用放电等离子烧结制备Cu/Ti3AlC2复合材料,研究了不同烧结温度对复合材料的影响。结果表明,在750~800℃之间,Cu与Ti3AlC2之间会发生反应生成TiC相。同时随着温度在650~850℃不断增加,密度和抗弯强度不断增加在850℃达到最大值分别为8.33 g·cm^-3和531.4 MPa,而电阻率先减小在750℃达到最小值1.98×10^-7Ω·m后增加在850℃达到最大值6.47×10^-7Ω·m。Cu/Ti3AlC2复合材料性能随着温度的变化与其致密度和反应生成TiC有着密切的联系。 展开更多
关键词 cu/ti3alc2 放电等离子烧结 致密度 导电性 弯曲强度
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Electrical, Thermal, and Mechanical Properties of Cu/Ti3AlC2 Functional Gradient Materials Prepared by Low-temperature Spark Plasma Sintering 被引量:1
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作者 CHEN Yanlin WU Chonggang 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2019年第4期876-882,共7页
Cu/Ti3AlC2 composite and functional-gradient materials with excellent electrical conductivity and thermal conductivity as well as good flexural properties were prepared by low-temperature spark plasma sintering of Cu ... Cu/Ti3AlC2 composite and functional-gradient materials with excellent electrical conductivity and thermal conductivity as well as good flexural properties were prepared by low-temperature spark plasma sintering of Cu and Ti3AlC2 powder mixtures. The phase compositions of the materials were analyzed by X-ray diffraction, and their microstructure was characterized by scanning electron microscopy and energy dispersive X-ray spectroscopy. Further, the electrical conductivity, thermal conductivity, and flexural properties of the materials were tested. Results show that, for the composite materials, the resistivity rises from 0.75 × 10^-7 Ω·m only to 1.32 × 10^-7 Ω·m and the thermal diffusivity reduces from 82.5 mm^2/s simply to 39.8 mm^2/s, while the flexural strength improves from 412.9 MPa to 471.3 MPa, as the content of Ti3AlC2 is increased from 5 wt%to 25 wt%. Additionally, the functional-gradient materials sintered without interface between the layers exhibit good designability, and their overall electrical conductivity, thermal conductivity, and flexural strength are all higher than those of the corresponding uniform composite material. 展开更多
关键词 cu/ti3alc2 FUNCtiONAL gradient material ELECTRICAL CONDUCtiVITY THERMAL CONDUCtiVITY
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Physical, Antioxidant and Thermal Shock Properties of Cu/Ti_2AlC Conductive Composites 被引量:1
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作者 严明 ZENG Chengwen +2 位作者 LI Zongyu LI Xuefeng 陈艳林 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第3期504-507,共4页
Cu/Ti2AlC composites were fabricated by vacuum hot-pressing technique. Phase composition was analyzed by XRD and morphology of fracture was observed by SEM. Physical performance such as density, resistivity, hardness ... Cu/Ti2AlC composites were fabricated by vacuum hot-pressing technique. Phase composition was analyzed by XRD and morphology of fracture was observed by SEM. Physical performance such as density, resistivity, hardness and friction coefficient with different volume fraction of Cu/Ti2AlC composites were studied. When the content of Ti2AlC increased from 10% to 70%, the relative density reduced from 99.38% to 90.56% and the resistivity increased significantly. Hardness reached the maximum value when Ti2AlC was at 60% and friction coefficient declined with the increasing of Ti2AlC. Cu/Ti2AlC composites, showing good conductivity properties and friction performance. Oxidation resistance enhanced obviously with the content of Ti2AlC increasing. Cu-60%Ti2AlC sample possessed optimum thermal shock resistance, and no cracking was found at 600 ℃ cycled for 10 times and 900 ℃ cycled for 1 time. 展开更多
关键词 cu-based composites ti2alc hot-pressing technique PROPERtiES
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铜基复合材料研究
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作者 任子荣 《中小企业管理与科技》 2011年第12期282-282,共1页
介绍了热处理对材料组织和性能的影响及选择热处理工艺的依据,分析了热处理前后Cu/Ti3AlC2复合材料的组织结构变化,对热处理后的性能进行了密度、电阻率、强度、断裂韧性的测试,比较分析了测试结果。
关键词 热处理 cu/ti3alc2 复合材料 组织 性能
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